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FIDIVI Tessitura Vergnano S.p.A./ Nabucco 6075 Reale © Foto: Indorama Ventures Fibers Germany GmbH / FIDIVI Tessitura Vergnano S.p.A./ Nabucco 6075 Reale
06.06.2023

Trevira CS at the Cruise Ship Interiors Design Expo Americas in Miami

Trevira CS is exhibiting for the first time at CSI Miami (Cruise Ship Interiors Design Expo Americas). Taking place on 6 – 7 June, 2023 at the Miami Beach Convention Center, CSI will bring together buyers and suppliers involved in cruise ship interiors, including interior designers, architects, outfitters, shipyards and suppliers.
 
On the Trevira CS stand, visitors can get an idea of the wide range of flame retardant fabrics suitable for use on board cruise ships. 53 fabrics from 20 Trevira CS customers will be on display that either have IMO certification and/or have been tested to the fire safety standards (FTP Code) required in the marine sector. Trevira CS fabrics are inherently flame retardant, meaning that their flame retardant properties cannot be washed out or lost through aging or use. This is due to the chemical structure of the polyester fiber: the flame retardant properties are firmly anchored in the fiber and cannot be altered by external influences. A surface-applied flame retardant finish is therefore not necessary.

Trevira CS is exhibiting for the first time at CSI Miami (Cruise Ship Interiors Design Expo Americas). Taking place on 6 – 7 June, 2023 at the Miami Beach Convention Center, CSI will bring together buyers and suppliers involved in cruise ship interiors, including interior designers, architects, outfitters, shipyards and suppliers.
 
On the Trevira CS stand, visitors can get an idea of the wide range of flame retardant fabrics suitable for use on board cruise ships. 53 fabrics from 20 Trevira CS customers will be on display that either have IMO certification and/or have been tested to the fire safety standards (FTP Code) required in the marine sector. Trevira CS fabrics are inherently flame retardant, meaning that their flame retardant properties cannot be washed out or lost through aging or use. This is due to the chemical structure of the polyester fiber: the flame retardant properties are firmly anchored in the fiber and cannot be altered by external influences. A surface-applied flame retardant finish is therefore not necessary.

In the marine sector, the demands placed on textiles are not only high in terms of fire protection, but also with regards to light resistance and durability. This is particularly true for textiles used in outdoor applications. These must be extremely robust, as they are exposed to moisture and sunlight. To meet these requirements, Trevira CS has launched a range of 30 new spun-dyed, UV-stable filament yarns. Besides color depth and durability, spun-dyed yarns offer another advantage: They are more sustainable because the fabrics made from them can be produced in a more environmentally friendly way than textiles that are dyed in one piece or consist of brightly colored yarns. In fabric production, a large share of resource consumption goes to the dyeing and finishing of fabrics as well as the use of chemicals and water. However, with spun-dyed yarns, these processing steps are unnecessary – the yarn immediately comes out of the spinneret in the desired color, reducing the products’ environmental impact.

The topic of sustainability is also taken up in other Trevira CS products. For example, Trevira CS fabrics are available in recycled versions. They consist of fiber and filament yarns obtained in different recycling processes. Filament yarns are produced using recycled PET bottles, they contain 50% post-consumer recycled material. Recycled fibers are obtained using an agglomeration plant and in further processing steps from residual pre-consumer waste from production. They consist of 100% recycled material (pre-consumer recycling). All flame retardant recycled Trevira® products are GRS (Global Recycled Standard) certified.
Fabrics made from these yarns are marked with the Trevira CS eco trademark. The prerequisite for this is a recycled content of at least 50%. Among the fabrics presented at the Trevira CS trade fair stand are 8 fabrics bearing the Trevira CS eco brand.

The long-term goal in developing sustainable products is undoubtedly to enter a circular economy. For this new path, an innovative Trevira CS product development was launched, producing flame retardant fibers and filament yarns from chemically recycled raw material. In this case, the basic raw material for the chemical recycling was PET bottles, but essentially it could be most any other PET recyclables, such as packaging material or even textiles. Chemical recycling involves depolymerization, a sequence of chemical reactions in which the polymer chains are broken down again into their original components, i. e. the monomers. In a further processing step, impurities are removed. Before the polymerization process is initiated, a small amount of MEG (mono ethylene glycol) is added.

The same technology used to produce the original (virgin) raw material for Trevira CS is also used here. The flame retardant modification is added during polymerization. In this way, the flame retardant properties are indelibly anchored in the polymer.

By recycling valuable materials such as packaging material, waste can be avoided. The raw material obtained from the recycling process is comparable to the original material can be used again in high-quality products.

Source:

Indorama Ventures Fibers Germany GmbH

© Fraunhofer UMSICHT
Im Projekt Power2C4 haben die Forschenden u.a. ein neues Katalysatorsystem auf Basis eines synthetischen Saponiten identifiziert und anschließend synthetisiert.
06.06.2023

Nachhaltigere und emissionsärmere Syntheseroute für Polymere

Butadien ist eine wichtige Plattformchemikalie, um Polymere – u.a. für die Produktion von Autoreifen – herzustellen. Bislang wird das Monomer aber meist auf Basis von Erdöl gewonnen. Eine alternative Syntheseroute haben Forschende des Fraunhofer UMSICHT im Rahmen des Projektes Power2C4 untersucht. Im Fokus: ein katalytisches Verfahren unter Einsatz regenerativ erzeugten Stroms.

»Butadien spielt eine wichtige Rolle bei der Herstellung von Polymeren«, ordnet UMSICHT-Wissenschaftler Marc Greuel ein. Neben Polybutadien, das in Autoreifen Anwendung findet, können Polytetrahydrofuran (PTHF), Polybutylenterephtalat (PBT) und Polybutylensuccinat (PBS) aus dem Monomer erzeugt werden. »Der Haken: Aktuell wird Butadien zu 95 Prozent als Nebenprodukt beim thermischen Zersetzen von Rohbenzin zu Ethen gewonnen – unter Ausstoß von Kohlendioxid. Zudem werden die Preise für Butadien perspektivisch ansteigen, da sich die Rohstoffbasis für Ethen immer mehr in Richtung Schiefergas verschiebt und dadurch die Produktionskapazität für Butadien sinkt.« Das Interesse an einem alternativen Herstellungsprozess ist also nicht nur aus Klimaschutzgründen groß.

Butadien ist eine wichtige Plattformchemikalie, um Polymere – u.a. für die Produktion von Autoreifen – herzustellen. Bislang wird das Monomer aber meist auf Basis von Erdöl gewonnen. Eine alternative Syntheseroute haben Forschende des Fraunhofer UMSICHT im Rahmen des Projektes Power2C4 untersucht. Im Fokus: ein katalytisches Verfahren unter Einsatz regenerativ erzeugten Stroms.

»Butadien spielt eine wichtige Rolle bei der Herstellung von Polymeren«, ordnet UMSICHT-Wissenschaftler Marc Greuel ein. Neben Polybutadien, das in Autoreifen Anwendung findet, können Polytetrahydrofuran (PTHF), Polybutylenterephtalat (PBT) und Polybutylensuccinat (PBS) aus dem Monomer erzeugt werden. »Der Haken: Aktuell wird Butadien zu 95 Prozent als Nebenprodukt beim thermischen Zersetzen von Rohbenzin zu Ethen gewonnen – unter Ausstoß von Kohlendioxid. Zudem werden die Preise für Butadien perspektivisch ansteigen, da sich die Rohstoffbasis für Ethen immer mehr in Richtung Schiefergas verschiebt und dadurch die Produktionskapazität für Butadien sinkt.« Das Interesse an einem alternativen Herstellungsprozess ist also nicht nur aus Klimaschutzgründen groß.

Die Frage, wie eine nachhaltigere, emissionsärmere und auch günstige Syntheseroute aussehen kann, stand im Zentrum des Projektes Power2C4. Angesiedelt im Kompetenzzentrum »Virtuelles Institut – Strom zu Gas und Wärme« hat es Expertinnen und Experten des Fraunhofer UMSICHT, des Gas- und Wärme-Instituts Essen e.V., des Energiewirtschaftlichen Instituts an der Universität zu Köln, des Forschungszentrums Jülich, der Ruhr-Universität Bochum, des Wuppertal-Instituts und des ZBT Duisburg zusammengeführt. Ihre Zielsetzung: Flexibilitätsoptionen vor dem Hintergrund der Energiewende zu untersuchen. Im Fokus des Teilprojekts Power2C4 stand ein neues katalytisches Herstellungsverfahren unter Einsatz regenerativ erzeugten Stroms. Ausgangspunkt ist Ethanol, das zum Beispiel im Zuge einer Hydrierungsreaktion aus CO2 und elektrolytisch erzeugtem Wasserstoff gewonnen wird. Dieses Ethanol dient in einem zweiten Schritt zur Synthese von Butadien mittels des sogenannten Lebedev-Prozesses.

Vielversprechendes Katalysatorsystem identifiziert
Da der erste Schritt bereits Gegenstand zahlreicher Forschungsaktivitäten ist, konzentrierten sich Wissenschaftlerinnen und Wissenschaftler auf die Weiterveredlung des Ethanols zu Butadien und die Verfahrenskopplung beider Schritte. »Wir haben u.a. ein neues Katalysatorsystem auf Basis eines synthetischen Saponiten identifiziert und anschließend synthetisiert«, erklärt Dr. Barbara Zeidler-Fandrich vom Fraunhofer UMSICHT. Die Testung der katalytischen Aktivität erfolgte in einer eigens konstruierten Versuchsanlage. »Aufbauend auf einem ersten Screening haben wir aussichtsreiche Materialien weiter optimiert. Das Ergebnis: Verglichen mit dem unmodifizierten Ausgangsmaterial lässt sich die Butadien-Selektivität im Rahmen der Katalysatoroptimierung deutlich erhöhen. Allerdings ist auch klar geworden, dass noch weiteres Potenzial zur Verbesserung der Katalysatorperformance besteht.«

Nachhaltigkeitsbewertung des Power-to-Butadien-Prozesses
Wie nachhaltig dieser Power-to-Butadien-Prozess wirklich ist, haben Dr. Markus Hiebel und Dr. Daniel Maga vom Fraunhofer UMSICHT in einer Life Cycle Analysis (LCA) untersucht. Beleuchtet haben sie dabei – neben unterschiedlichen Katalysatoren – die Herstellungsmethode von Ethanol und die Relevanz der eingesetzte Energiequelle. »Wir konnten zeigen, dass der Lebedev-Prozess je nach verwendeter Ethanol- und Energiequelle das Potenzial hat, Butadien und damit auch Styrol-Butadien-Kautschuk aus biobasiertem Ethanol oder CO2-basiertem Ethanol herzustellen und CO2-Emissionen zu reduzieren«, so Daniel Maga. »Damit ermöglicht der Power2C4-Prozess die Nutzung alternativer Kohlenstoffquellen.« Besonders die Nutzung von Ethanol aus Restbiomasseströmen wie Bagasse oder Stroh eröffne Wege, Treibhausgasemissionen von Butadien deutlich zu reduzieren. Zudem führe ein Strommix mit immer höheren Anteilen an erneuerbaren Energien zur Möglichkeit, Treibhausgasreduktionen über Carbon-Capture-and-Utilization-Prozesse (CCU) zu realisieren.
 
FÖRDERHINWEIS
Das Kompetenzzentrum »Virtuelles Institut – Strom zu Gas und Wärme« wird gefördert durch das »Operationelle Programm zur Förderung von Investitionen in Wachstum und Beschäftigung für Nordrhein-Westfalen aus dem Europäischen Fonds für regionale Entwicklung« (OP EFRE NRW) sowie durch das Ministerium für Wirtschaft, Innovation, Digitalisierung und Energie des Landes Nordrhein-Westfalen.

06.06.2023

GOTS, European Space Agency and Marple: Remote monitoring in organic cotton certification

  • Project from the Global Organic Textile Standard, European Space Agency and Marple will use AI and satellite imagery to detect organic versus non-organic cotton fields
  • Innovative demonstrator project explores the potential of remote monitoring to strengthen integrity and development of organic cotton cultivation
  • Project will run across India with first results expected by the end of 2023

In a world first, the Global Organic Textile Standard (GOTS), European Space Agency (ESA) and AI company Marple have today launched a new demonstrator project that aims to show the potential for remote satellite monitoring of organic cotton cultivation systems.

The project, to be carried out under ESA’s Business Applications and Space Solutions (BASS) programme, will train artificial intelligence (AI) to use ESA satellite data to detect cotton fields across India and automatically classify them according to their cultivation standard. By integrating standardised yield metrics, this innovative approach will also enable GOTS to generate realistic estimates of organic cotton yields in specific areas.

  • Project from the Global Organic Textile Standard, European Space Agency and Marple will use AI and satellite imagery to detect organic versus non-organic cotton fields
  • Innovative demonstrator project explores the potential of remote monitoring to strengthen integrity and development of organic cotton cultivation
  • Project will run across India with first results expected by the end of 2023

In a world first, the Global Organic Textile Standard (GOTS), European Space Agency (ESA) and AI company Marple have today launched a new demonstrator project that aims to show the potential for remote satellite monitoring of organic cotton cultivation systems.

The project, to be carried out under ESA’s Business Applications and Space Solutions (BASS) programme, will train artificial intelligence (AI) to use ESA satellite data to detect cotton fields across India and automatically classify them according to their cultivation standard. By integrating standardised yield metrics, this innovative approach will also enable GOTS to generate realistic estimates of organic cotton yields in specific areas.

Integrated with existing GOTS measures, this project will enable GOTS to further enhance the integrity of organic cotton by developing advanced risk assessment technology for organic certification and preventing fraud from the beginning of the supply chain. “It is an honour and very exciting to be a partner in this ESA Demonstration Project, and it is living up to our claim to be pioneers serving the sustainable textile sector to enable continuous improvement. Technologies like this will be a game changer regarding the integrity and promotion opportunities of organic cotton.” says Claudia Kersten, Managing Director of GOTS.

The project's anticipated impact extends beyond identifying certified organic cotton fields. It is expected to also empower GOTS to recognise cotton fields that have not yet obtained organic certification but possess the potential for a seamless transition to organic cultivation, thanks to their utilisation of traditional and ecologically friendly farming practices. This would enable GOTS to bring a greater number of farmers – particularly those of a smaller size – into the certified organic sector and supply chains, creating new economic opportunities for small-scale farmers and their communities while also helping the textile sector to meet growing consumer demand for organic cotton. Guillaume Prigent, Business Development and Partnerships Officer at the European Space Agency, adds: “This project highlights how space solutions can have a positive impact on the world and is the kind of innovation that ESA supports through its Business Applications and Space Solutions programme.”

The project will run across the distinct cotton growing regions in India, with first results expected by the end of 2023.

India project builds on successful Uzbekistan feasibility pilot
The project is co-financed by GOTS and ESA, in collaboration with Marple GmbH, a German software development firm that developed the CoCuRA (Cotton Cultivation Remote Assessment) software with ESA BASS and successfully piloted it in a feasibility project in 2021 in Uzbekistan.

That venture showed how the trained AI was able to accurately differentiate cotton fields from other crops using only satellite images and sensor data, as well as whether the cotton fields were cultivated organically.

This spurred considerable interest from GOTS, which has committed to the development of cutting-edge technologies that can improve the integrity of the organic textile sector, especially cotton. Dr David Scherf, co-founder of Marple, said: “All our projects strive to leverage advanced technology for a positive impact on the environment and society. We are therefore delighted that our CoCuRA technology, which emerged from a moonshot research project, is being applied in a practical and impactful way. We are excited about the opportunity to work with the exceptional team at GOTS and further strengthen our successful partnership with ESA.”

More information:
GOTS AI cotton India
Source:

GOTS Global Organic Textile Standard

05.06.2023

Resource-efficient dyeing solutions for sustainable PA fibers

CHT and Fulgar have collaborated to support the goal of reducing the carbon footprint with an effective and sustainable solution for the textile market.

Combining FULGAR’s circular economy ready yarns with CHT’s resource-saving dyeing techniques significantly reduces the usage of natural resources and leads to lower environmental impact and ultimately a lower carbon footprint. The combined process needs less water, uses less energy, and saves time while meeting the color fastness standards for finished textile products.

The combination of 100 % biobased polyamide EVO® by FULGAR yarns with CHT sustainable dyeing application can save water up to 64 %, energy use up to 50 % and process time up to 50 %, when compared to standard dyeing processes. Sustainable dyeing of EVO® is promoted using CHT’s soy-based dyeing auxiliary SARABID TS 300. SARABID TS 300 has accredited a C2C Certified Material Health Certificate at Gold level and USDA Certified Biobased Product Certification.

CHT and Fulgar have collaborated to support the goal of reducing the carbon footprint with an effective and sustainable solution for the textile market.

Combining FULGAR’s circular economy ready yarns with CHT’s resource-saving dyeing techniques significantly reduces the usage of natural resources and leads to lower environmental impact and ultimately a lower carbon footprint. The combined process needs less water, uses less energy, and saves time while meeting the color fastness standards for finished textile products.

The combination of 100 % biobased polyamide EVO® by FULGAR yarns with CHT sustainable dyeing application can save water up to 64 %, energy use up to 50 % and process time up to 50 %, when compared to standard dyeing processes. Sustainable dyeing of EVO® is promoted using CHT’s soy-based dyeing auxiliary SARABID TS 300. SARABID TS 300 has accredited a C2C Certified Material Health Certificate at Gold level and USDA Certified Biobased Product Certification.

EVO® by FULGAR, the totally renewable yarn based on castor plants, does not require high amounts of water - 4 times less compared to cotton. In addition to the sustainable aspect, EVO® by FULGAR offers characteristics like lower fiber weight, particular moisture management and higher stretch often without the need for elastomer fiber. This helps to avoid material mixes for better recycling opportunities. EVO® provides greater user comfort, mainly for performance and casual apparel.

More information:
CHT Evo by Fulgar Fulgar
Source:

CHT Germany GmbH

Graphic IVL
01.06.2023

Indorama Ventures and Carbios: MOU for PET biorecycling plant in France

Indorama Ventures Public Company Limited (IVL) and Carbios, a biotech company developing and industrializing biological solutions to reinvent the life cycle of plastic and textiles, announce the signing of a non-binding Memorandum of Understanding (MOU) to form a Joint Venture for the construction of the world’s first PET biorecycling plant in France.  

Based on and subject to the comprehensive terms set out in the MOU, Indorama Ventures plans to mobilize about €110 million for the Joint Venture in equity and non-convertible loan financing , pending final engineering documentation and final economic feasibility studies. Both parties have acknowledged their mutual support for the implementation of the project and their intent to finalize contract documentation before end 2023.

Subject to the successful performance of this first plant in France, Indorama Ventures confirms its intention to potentially expand the technology to other PET sites for future developments.

Indorama Ventures Public Company Limited (IVL) and Carbios, a biotech company developing and industrializing biological solutions to reinvent the life cycle of plastic and textiles, announce the signing of a non-binding Memorandum of Understanding (MOU) to form a Joint Venture for the construction of the world’s first PET biorecycling plant in France.  

Based on and subject to the comprehensive terms set out in the MOU, Indorama Ventures plans to mobilize about €110 million for the Joint Venture in equity and non-convertible loan financing , pending final engineering documentation and final economic feasibility studies. Both parties have acknowledged their mutual support for the implementation of the project and their intent to finalize contract documentation before end 2023.

Subject to the successful performance of this first plant in France, Indorama Ventures confirms its intention to potentially expand the technology to other PET sites for future developments.

Under the agreement signed June 1, Carbios, which filed for plant permitting in December 2022, should acquire 13ha land from Indorama Ventures’ existing PET plant at Longlaville and expects to be granted permits by Q3 2023, allowing start of construction by end of 2023 and targeted commissioning in 2025.  The land surface offers the possibility to double capacity. Pursuant to this MOU, Indorama Ventures shall ensure 100% of output repolymerization and both partners shall collaborate to secure feedstock supply.

The total capital investment for the new plant is re-estimated to be around €230 million, taking into account recent impact from inflation. Project costs shall be financed by the sums mobilized by Indorama Ventures, the French State and Grand-Est Region subsidies available for the project , and by equity capitalization of the Joint Venture by Carbios. Part of Carbios’ equity injection into the Joint Venture shall be financed by a portion of Carbios’ current cash position (i.e. €86 million as of 30 April 2023). Carbios is actively examining the best options to finance its remaining equity injection into the Joint Venture and will choose the most appropriate solution and timeline based on market conditions.

The project is part of Indorama Ventures’ Vision 2030 ambition to build on its leadership as a global sustainable chemical company. The company’s ESG commitments include spending $1.5 billion to increase its recycling capacity to 50 billion PET bottles per year by 2025 and 100 billion bottles per year by 2030. To meet these goals, Indorama Ventures, the world’s largest producer of recycled PET resin used in beverage bottles, is investing in new recycling technologies, including advanced recycling, in addition to expanding its global footprint of mechanical recycling sites, including two in France.

Carbios has developed a disruptive enzymatic depolymerization technology that enables efficient and solvent-free recycling of PET plastic and textile waste into virgin-like products with an aim to achieve true circularity. Carbios has ambitious plans to become a leading technology provider in advanced recycling of PET by 2035. After successful ongoing operations in its demonstration plant in Clermont-Ferrand in France, Carbios has been collaborating with Indorama Ventures for over a year to assess the commercial and technical feasibility of the technology. The world’s first industrial-scale enzymatic PET recycling plant at Longlaville will have a capacity to process about 50,000 tons of post-consumer PET waste per year, including waste that is not recyclable mechanically, equivalent to 2 billion PET colored bottles or 2.5 billion PET trays.

More information:
IVL Carbios biorecycling PET
Source:

IVL

(c) Hologenix
31.05.2023

CELLIANT® with REPREVE® wins third Consecutive Award

CELLIANT® with REPREVE®, introduced by Hologenix with global textile solutions provider UNIFI®, makers of REPREVE®, has been awarded a Top 5 Selection in the Accelerated Eco category of the Spring/Summer ISPO Textrends 2025 Awards.

Last fall CELLIANT with REPREVE was also awarded a Selection in the Fibers & Insulation Category of the ISPO Textrends Fall/Winter 2024/2025. In addition, in the spring the fiber was shortlisted in the Drapers Sustainable Fashion 2023 Awards in the Sustainable Textile Innovation category.

Twice a year, ISPO recognizes innovative fibers, fabrics and components that are used to manufacture sports apparel. Both companies are excited that this innovation, whereby CELLIANT infrared (IR) technology is embedded into REPREVE, a brand of recycled fiber, has achieved these honors. CELLIANT with REPREVE is a performance fiber made from recycled materials that have been enhanced with IR technology to provide wellness benefits to the consumer.  

CELLIANT® with REPREVE®, introduced by Hologenix with global textile solutions provider UNIFI®, makers of REPREVE®, has been awarded a Top 5 Selection in the Accelerated Eco category of the Spring/Summer ISPO Textrends 2025 Awards.

Last fall CELLIANT with REPREVE was also awarded a Selection in the Fibers & Insulation Category of the ISPO Textrends Fall/Winter 2024/2025. In addition, in the spring the fiber was shortlisted in the Drapers Sustainable Fashion 2023 Awards in the Sustainable Textile Innovation category.

Twice a year, ISPO recognizes innovative fibers, fabrics and components that are used to manufacture sports apparel. Both companies are excited that this innovation, whereby CELLIANT infrared (IR) technology is embedded into REPREVE, a brand of recycled fiber, has achieved these honors. CELLIANT with REPREVE is a performance fiber made from recycled materials that have been enhanced with IR technology to provide wellness benefits to the consumer.  

CELLIANT is a natural blend of IR-generating bioceramic minerals, which, when embedded into textiles, allows them to convert body heat into infrared energy, returning it to the body and temporarily increasing local circulation and cellular oxygenation. This aids in muscle recovery, increases endurance, and improves overall performance in healthy individuals, among other benefits.
 
REPREVE recycled performance fiber consists of high-quality fibers made from 100% recycled materials, including post-consumer plastic bottles and pre-consumer waste. It is also certified and traceable with UNIFI’s U TRUST® verification and FiberPrint™ technology, which provide assurance that the product comes from recycled materials. Compared to virgin fiber, REPREVE helps to offset the use of petroleum, conserving water and energy and emitting fewer greenhouse gasses.

This award marks the third year in a row that Hologenix has had its CELLIANT technology recognized in the ISPO Textrends Awards. CELLIANT in pure white was a Top Ten Winner in 2022. The prior year, CELLIANT Viscose was a Selection Winner as well. 

Source:

Hologenix, LLC

Photo: CHT
26.05.2023

BEZAKTIV ONE: New Reactive dyes range by CHT

  • Reactive dyes for water and energy saving dye processes with significantly shortened process time

BEZAKTIV ONE covers a broad color spectrum with tinctorial very strong dyes. This enables a cost-efficient dye process with significantly less dye and salt. The excellent wash-off behavior allows short rinse cycles at lower temperatures and therefore offers further ecological and economic advantages. The dyes are particularly suitable for durable textiles due to their good multiple wash fastness.

Cellulosic fibers are often dyed with reactive dyes, as these are commercially available in a wide range of colors that result in dyeings with high wash fastness. However, reactive dyeings require a lot of water due to the necessary rinsing processes. Due to increased ecological requirements, the development of energy and water saving processes is not just a trend, but rather a core prerequisite for new dyes.

A minimal number of rinsing baths and generally lower temperatures for dye exhaust, rinsing and soaping contribute to an overall efficient water and energy saving dyeing processes.

  • Reactive dyes for water and energy saving dye processes with significantly shortened process time

BEZAKTIV ONE covers a broad color spectrum with tinctorial very strong dyes. This enables a cost-efficient dye process with significantly less dye and salt. The excellent wash-off behavior allows short rinse cycles at lower temperatures and therefore offers further ecological and economic advantages. The dyes are particularly suitable for durable textiles due to their good multiple wash fastness.

Cellulosic fibers are often dyed with reactive dyes, as these are commercially available in a wide range of colors that result in dyeings with high wash fastness. However, reactive dyeings require a lot of water due to the necessary rinsing processes. Due to increased ecological requirements, the development of energy and water saving processes is not just a trend, but rather a core prerequisite for new dyes.

A minimal number of rinsing baths and generally lower temperatures for dye exhaust, rinsing and soaping contribute to an overall efficient water and energy saving dyeing processes.

BEZAKTIV ONE dyes can be dyed, rinsed and soaped between 40 and 60 °C. Therefore, the BEZAKTIV ONE exhaust dyeing process is significantly shorter compared to conventional reactive dyeing processes, where temperatures between 60 and 98 °C are required. This advantage means savings in process time and higher productivity for the textile dyer.

The advantages become particularly clear when dyeing medium to dark shades with the BEZAKTIV ONE process. Due to the high fixation level in combination with good color build-up dark shades can be matched with lower dye concentrations of BEZAKTIV ONE than with conventional bifunctional reactive dyes. The addition of the auxiliary COTOBLANC SEL in the second soap bath has an additional positive effect, so that a washing process with low water and energy consumption generates excellent wet fastness properties on the textile.

25.05.2023

INDA releases new North American Nonwoven Materials Annual Study

INDA, the Association of the Nonwovens Fabrics Industry, announces the publication of a new study, North American Nonwoven Materials Annual Study 2022.

Based on actual surveys and interviews with producers, enhancing the accuracy and relevance, this study tracks machine additions, closures, and productivity improvements. This study is the industry benchmark for capacity and production information for North America and the only publication that provides an estimate of operating rates, based on nameplate machine capacity, through the year 2022. The 72-page study contains 43 figures and 11 tables.

“An element of INDA’s mission is to provide credible statistics to the nonwovens and engineered materials industry,” said Tony Fragnito, INDA President. “Our objective is to continually improve the quality of data and industry information. We feel the industry will greatly benefit from this in-depth resource for strategic planning and investment purposes,” Fragnito added.

INDA, the Association of the Nonwovens Fabrics Industry, announces the publication of a new study, North American Nonwoven Materials Annual Study 2022.

Based on actual surveys and interviews with producers, enhancing the accuracy and relevance, this study tracks machine additions, closures, and productivity improvements. This study is the industry benchmark for capacity and production information for North America and the only publication that provides an estimate of operating rates, based on nameplate machine capacity, through the year 2022. The 72-page study contains 43 figures and 11 tables.

“An element of INDA’s mission is to provide credible statistics to the nonwovens and engineered materials industry,” said Tony Fragnito, INDA President. “Our objective is to continually improve the quality of data and industry information. We feel the industry will greatly benefit from this in-depth resource for strategic planning and investment purposes,” Fragnito added.

The complete study is provided to producers who supplied key metrics. The Executive Summary, an overview of the findings and implications, will be offered to current INDA members on a complimentary basis.

The detailed study is available for purchase, with members receiving a discount.

Findings from this year’s study include:

  • North American capacity continues to increase with investments being made across all the processes and for a variety of end-uses. The industry’s nameplate capacity utilization has increased year-over-year, for the fifth consecutive year.
  • In 2022, capacity of nonwovens in North America reached 5.565 million tonnes, an increase from the previous year of 2.4% (net growth of 128,700 tonnes) and an improvement over the previous year’s growth rate of 1.8%.
  • North American imports, in tonnage, decreased 24.3% in 2022 and exports decreased 16.3% due to market stabilization after COVID. Nonwoven production tends to stay within the region, so the net trade balance (imports less exports) accounted for less than 5.5% of the region’s capacity.

“2022 was a period of economic adjustment and stabilization,” said Mark Snider, Chief Market & Industry Analyst. “We’re seeing a controlled and consistent transition back to pre-pandemic levels of nonwoven growth.”

More information:
INDA nonwovens study
Source:

INDA, Association of the Nonwovens Fabrics Industry

BEZAKTIV ONE Foto: CHT
25.05.2023

BEZAKTIV ONE: Neues Reaktivfarbstoff-Sortiment von CHT

  • Reaktivfarbstoffe für wasser- und energiesparende Färbeprozesse mit stark verkürzten Prozesszeiten

BEZAKTIV ONE deckt ein breites Spektrum an außergewöhnlich starken Farbstoffen ab. Dies ermöglicht kosteneffiziente Färbeprozesse mit weniger Farbstoff und Salz. Das ausgezeichnete Auswaschverhalten ermöglicht kurze Spülprozesse bei tiefer Temperatur und bietet dadurch einen weiteren ökonomischen und ökologischen Vorteil. Die Farbstoffe eignen sich durch ihre gute Mehrfachwaschechtheit besonders für langlebige Textilien.

Zellulosefasern werden häufig mit Reaktivfarbstoffen gefärbt, da diese in einer Vielzahl von Farben kommerziell erhältlich sind und Färbungen mit hoher Waschechtheit ergeben. Reaktivfärbungen benötigen durch die notwendigen Spülprozesse jedoch viel Wasser. Aufgrund der gestiegenen ökologischen Anforderungen ist die Entwicklung energie- und wassersparender Verfahren eine Kernanforderung an neue Farbstoffe.

Eine minimale Anzahl von Spülbädern und generell niedrigere Temperaturen der Färbe-, Spül- und Seifbäder tragen zu effizienten wasser- und energiesparenden Färbeprozessen bei.

  • Reaktivfarbstoffe für wasser- und energiesparende Färbeprozesse mit stark verkürzten Prozesszeiten

BEZAKTIV ONE deckt ein breites Spektrum an außergewöhnlich starken Farbstoffen ab. Dies ermöglicht kosteneffiziente Färbeprozesse mit weniger Farbstoff und Salz. Das ausgezeichnete Auswaschverhalten ermöglicht kurze Spülprozesse bei tiefer Temperatur und bietet dadurch einen weiteren ökonomischen und ökologischen Vorteil. Die Farbstoffe eignen sich durch ihre gute Mehrfachwaschechtheit besonders für langlebige Textilien.

Zellulosefasern werden häufig mit Reaktivfarbstoffen gefärbt, da diese in einer Vielzahl von Farben kommerziell erhältlich sind und Färbungen mit hoher Waschechtheit ergeben. Reaktivfärbungen benötigen durch die notwendigen Spülprozesse jedoch viel Wasser. Aufgrund der gestiegenen ökologischen Anforderungen ist die Entwicklung energie- und wassersparender Verfahren eine Kernanforderung an neue Farbstoffe.

Eine minimale Anzahl von Spülbädern und generell niedrigere Temperaturen der Färbe-, Spül- und Seifbäder tragen zu effizienten wasser- und energiesparenden Färbeprozessen bei.

BEZAKTIV ONE Farbstoffe können zwischen 40 und 60 °C gefärbt, gespült und geseift werden. Daher ist der Ausziehfärbeprozess im Vergleich zu herkömmlichen Reaktivfärbeverfahren, bei denen Temperaturen zwischen 60 und 98 °C erforderlich sind, deutlich kürzer. Dieser Vorteil bedeutet für den Textilfärber Einsparungen bei der Prozesszeit und eine höhere Produktivität.

Besonders deutlich werden die Vorteile des Verfahrens bei mittleren bis dunklen Farbtönen. Durch die Kombination von hohem Fixiergrad und gutem Farbaufbau können insbesondere dunkle Nuancen mit geringeren Farbstoff-Einsatzmengen als mit herkömmlichen bifunktionellen Reaktivfarbstoffen erreicht werden. Durch die Zugabe des Hilfsmittels COTOBLANC SEL im zweiten Seifbad ergibt sich ein zusätzlicher positiver Effekt, so dass ein Waschprozess mit geringem Wasser- und Energieaufwand zu hervorragenden Nassechtheiten auf dem Textil führt.

Source:

CHT

(c) Beaulieu International Group
22.05.2023

B.I.G. Yarns launches Sustainable Yarns at Clerkenwell Design Week

B.I.G. Yarns unveils its new “SustainableYarns” platform, with Clerkenwell Design Week visitors the first to be invited to get on board and focus on what matters most for the design and manufacture of sustainable soft floorings.

The expert in polyamide (PA) 1 step 3 ply yarns offers a range of options for manufacturers to introduce sustainable yarns into carpet solutions and reach sustainability targets faster and more efficiently.

The Sustainable Yarns range creates opportunities to design with recycled content yarn (EqoCycle), to work with renewable resources (EqoBalance), and, following the launch of new polyamide 6 (PA6) EqoYarn at Clerkenwell Design Week, to also leverage the low-impact value chain.

New addition EqoYarn is a new low-impact PA6 carpet yarn based on the most recent innovations in polymer production, which enable yarn manufacturers to lower their carbon footprint by nearly 50% and give carpet manufacturers more options to reduce their impact.

B.I.G. Yarns unveils its new “SustainableYarns” platform, with Clerkenwell Design Week visitors the first to be invited to get on board and focus on what matters most for the design and manufacture of sustainable soft floorings.

The expert in polyamide (PA) 1 step 3 ply yarns offers a range of options for manufacturers to introduce sustainable yarns into carpet solutions and reach sustainability targets faster and more efficiently.

The Sustainable Yarns range creates opportunities to design with recycled content yarn (EqoCycle), to work with renewable resources (EqoBalance), and, following the launch of new polyamide 6 (PA6) EqoYarn at Clerkenwell Design Week, to also leverage the low-impact value chain.

New addition EqoYarn is a new low-impact PA6 carpet yarn based on the most recent innovations in polymer production, which enable yarn manufacturers to lower their carbon footprint by nearly 50% and give carpet manufacturers more options to reduce their impact.

For its EqoYarn Bulk Continuous Filament (BCF) production process, B.I.G. Yarns has selected the few best-in-class partners that have made major steps forward in terms of sustainability, and reduced their greenhouse gas emissions thanks to continuous investments in process efficiency, green energy, heat optimization and waste reduction. The result is EqoYarn with a carbon footprint of 4 kg CO2 eq/kg yarns, which is a CO2 reduction of up to 50% compared to conventional PA yarns.

EqoBalance PA6 yarns enable customers to reach an even higher CO2 reduction of up to 75%. Manufactured with polymers made from renewable resources such as organic waste from cooking oil instead of virgin or fossil feedstock, these yarns have a carbon footprint of 1.98 kg CO2 eq./ kg yarns. They help carpet manufacturers to create products with an extremely low carbon footprint.

EqoCycle PA6 yarns are fully recyclable and incorporate 75% recycled content originating from recycled and regenerated PA6 granules. With a carbon footprint of 4.64 kg CO2 eq./ kg yarns, they deliver the same high-quality performance of virgin PA6 yarn with the benefit of 37% CO2 reduction. EqoCycle yarns offer carpet manufacturers a sustainable alternative to help reduce the ecological footprint of their products and move towards a circular economy without jeopardizing the end-product quality.

In addition to the different CO2-reducing options, B.I.G. Yarns’ customers can access an unlimited colour range to elevate their designs. Its BCF technology for polyamide yarns, twisted and heat-set yarns, one-colour to multi-colour, between 650 and 15000 dTex, along with its colour studio, are available to support their creation of customised collections.

Source:

Beaulieu International Group

(c) Sappi Europe
18.05.2023

Sappi at ITMA 2023

As a global provider of sustainable woodfibre products, Sappi will be showcasing its solutions for the garment industry under the theme “Fashion meets Forest” at ITMA 2023 – with sublimation papers and its dissolving wood pulp, used for the production of garment fibres under the “Verve” brand name.

How can the woodfibre industry support a more sustainable garments market? Sappi is eager to answer this question at the ITMA and has created a “knowledge trail” for visitors to explore under the motto “Fashion meets Forest”. Visitors to the stand can follow the journey from wood via cellulose and fibre to the finished yarn and the printed garment.

Sublimation papers: Expanded production capacity in Carmignano
Sappi’s Transjet sublimation papers stand for fast, uniform ink transfer and minimal ink consumption. As a premium supplier, Sappi is constantly striving to meet its customers’ needs. So, at this year’s ITMA, various sublimation papers with optimised qualitative properties will be on show.

As a global provider of sustainable woodfibre products, Sappi will be showcasing its solutions for the garment industry under the theme “Fashion meets Forest” at ITMA 2023 – with sublimation papers and its dissolving wood pulp, used for the production of garment fibres under the “Verve” brand name.

How can the woodfibre industry support a more sustainable garments market? Sappi is eager to answer this question at the ITMA and has created a “knowledge trail” for visitors to explore under the motto “Fashion meets Forest”. Visitors to the stand can follow the journey from wood via cellulose and fibre to the finished yarn and the printed garment.

Sublimation papers: Expanded production capacity in Carmignano
Sappi’s Transjet sublimation papers stand for fast, uniform ink transfer and minimal ink consumption. As a premium supplier, Sappi is constantly striving to meet its customers’ needs. So, at this year’s ITMA, various sublimation papers with optimised qualitative properties will be on show.

Sappi maintains the high quality of its coated Transjet and uncoated Basejet sublimation papers by regularly investing in new, state-of-the-art technologies. At the end of April, a new warehouse has been inaugurated at the Carmignano mill in Italy. In the next month’s, Sappi will further invest in two new converting machines with a width of 1.9 meters and 3.2 meters as well as in a fully automated packaging line. All the investments will support the company’s vision of having a complete in-house solution for the sublimation industry, have a positive impact on CO2 emission, satisfy the increased demand of their customers as well as further improve lead times.
 
“Verve” dissolving wood pulp for high-quality textiles
Sappi will also be showcasing its dissolving pulp (DP) brand “Verve”. DP provides the feedstock raw material toward producing rayon fibres such as Lyocell and viscose and further into yarns and fabrics. Textiles produced from wood based cellulosic fibres are noted for their breathability, colour fastness, softness, drape, absorbency and biodegradability. In addition to the garment industry, dissolving pulp is also used in various household and pharmaceutical products.

Source:

Sappi Europe

(c) FET
FET’s Director of Technology, Mark Smith and new R&D Manager, Dr Jonny Hunter
17.05.2023

FET strengthens its technical team

Fibre Extrusion Technology Ltd (FET) of Leeds, UK has strengthened its technical team with the appointment of Dr Jonny Hunter as Research & Development Manager. Hunter brings a wealth of academic credentials to the department, including a Master’s in Medicinal and Biological Chemistry and a PhD in Sustainable Chemistry. This academic background is complemented by over 10 years’ R&D experience in industry, including FMCG and, in particular, medical devices, which encompasses wound care, the medical device manufacturing process and regulatory environment.

Fibre Extrusion Technology Ltd (FET) of Leeds, UK has strengthened its technical team with the appointment of Dr Jonny Hunter as Research & Development Manager. Hunter brings a wealth of academic credentials to the department, including a Master’s in Medicinal and Biological Chemistry and a PhD in Sustainable Chemistry. This academic background is complemented by over 10 years’ R&D experience in industry, including FMCG and, in particular, medical devices, which encompasses wound care, the medical device manufacturing process and regulatory environment.

FET designs, develops and manufactures extrusion equipment for a wide range of high value textile material applications, so the above research and industrial sectors have great relevance to the company’s focus on the international stage. A significant market for FET’s meltspinning equipment is medical devices, so in-house expertise in this area is a vital commodity. FET is also at the forefront of innovation to promote and develop sustainable fibres, so technical knowhow in sustainability is also essential. In this, Jonny Hunter has considerable experience and has in the past lead a number of innovation projects in sustainable chemistry and management.

This fresh input of knowledge and experience will benefit FET’s customers in their own drive for sustainable innovation in fibre technology. Mark Smith, the previous R&D Manager, is taking a short sabbatical and will be returning in a more strategic role as FET’s Director of Technology, so his continued presence will further contribute to FET’s breadth of technical expertise.

FET has also expanded in a number of other departments to reflect the rapid growth in sales over recent years. Mike Urey is the new Sales Engineer, bringing a wide industrial experience and strengthening all aspects of business development. Three new mechanical and electronic engineers and a new appointment in the design department all combine to take the company forward and sustain growth.

Source:

Fibre Extrusion Technology Ltd (FET)

17.05.2023

Nach angekündigtem Aus doch noch Investorenlösung für Advansa Manufacturing GmbH

Die Schwarzwälder Textil-Werke Heinrich Kautzmann GmbH (STW Kautzmann) aus Schenkenzell, ein Unternehmen der Kautzmann-Gruppe, übernimmt wesentliche Vermögenswerte der insolventen Advansa Manufacturing GmbH, führender Anbieter von Polyesterfasern mit Sitz in Hamm. Darauf einigte sich der Insolvenzverwalter der Advansa Manufacturing, RA Holger Rhode, mit den Verantwortlichen von STW. Der Kaufvertrag wurde am Montag unterzeichnet. Der Investor übernimmt den Standort in Hamm sowie 65 Beschäftigte des Unternehmens, die ursprünglich noch bis Ende Juni 2023 die Ausproduktion des insolventen Betriebs abwickeln sollten. Insolvenzverwalter Rhode und Geschäftsführer Frank Heimann konnten so die Schließung des Geschäftsbetriebs in Hamm doch noch verhindern.

Die Schwarzwälder Textil-Werke Heinrich Kautzmann GmbH (STW Kautzmann) aus Schenkenzell, ein Unternehmen der Kautzmann-Gruppe, übernimmt wesentliche Vermögenswerte der insolventen Advansa Manufacturing GmbH, führender Anbieter von Polyesterfasern mit Sitz in Hamm. Darauf einigte sich der Insolvenzverwalter der Advansa Manufacturing, RA Holger Rhode, mit den Verantwortlichen von STW. Der Kaufvertrag wurde am Montag unterzeichnet. Der Investor übernimmt den Standort in Hamm sowie 65 Beschäftigte des Unternehmens, die ursprünglich noch bis Ende Juni 2023 die Ausproduktion des insolventen Betriebs abwickeln sollten. Insolvenzverwalter Rhode und Geschäftsführer Frank Heimann konnten so die Schließung des Geschäftsbetriebs in Hamm doch noch verhindern.

Möglich macht diesen Erfolg auch die Beharrlichkeit des Investors. „Nachdem der Verkaufsprozess ursprünglich gescheitert war, weil der Gesellschafter der Advansa Manufacturing kurz vor Unterzeichnung des Kaufvertrags unrealistische Forderungen für benötigte Geschäftsbereiche von Schwestergesellschaften gestellt hatte, haben wir mit STW weiter intensiv nach einer Lösung gesucht und sie gefunden“, sagt Insolvenzverwalter Rhode. Allen Verantwortlichen war bewusst, dass in den Standort investiert werden musste, um den Geschäftsbetrieb aufrechterhalten zu können.

So wird die Fortführung zunächst im Rahmen eines Geschäftsbesorgungsvertrages der insolventen Advansa Manufacturing GmbH realisiert. „Bis zum Jahresende sind dann die notwendigen Investitionen getätigt, um mit der neu gegründeten Engineered Fiber Solutions GmbH unter dem Dach von STW zu operieren“, erklärt Frank Heimann, der auch Geschäftsführer der neuen Gesellschaft sein wird. „Wir entwickeln, produzieren und vertreiben künftig technische Spezialfasern mit einem Schwerpunkt in der Papier- und Vliesstoffindustrie“, gibt Heimann die Aufgaben vor.

Das Produktportfolio und der Produktionsstandort der insolventen Advansa Manufacturing GmbH bleiben somit erhalten. „Dieser Weg wurde auch vom Standortortbetreiber Celanese unterstützt, indem er Zugeständnisse für den Fortbetrieb des Unternehmens gemacht hat“, sagt Heimann. Tatkräftige Unterstützung bekam er mit seinem Team auch von Impuls. Die Hammer Wirtschaftsagentur GmbH. Die Agentur, die den Wirtschaftsstandort Hamm fördert, wird das neue Unternehmen auch weiterhin begleiten, bestätigt Marina Heuermann, Leiterin Unternehmensentwicklung bei Impuls.

Der Investor STW Kautzmann ist ein Familienbetrieb mit über 100jähriger Geschichte. Das Unternehmen steht für Stabilität, Wachstum und Erfolg bei Herstellung und Vertrieb von Kurzschnittfasern, Fibriden und Pulp unter anderem für die Bau-, Fahrzeug-, Gummi- und Kunststoffindustrie. „Das Portfolio der Engineered Fiber Solutions GmbH wird unsere Produktpalette sinnvoll ergänzen. Wir können gemeinsam Synergien nutzen und sehen deutliche Entwicklungspotenziale“, sind Dr. Frank Kautzmann und Nico Kautzmann, die beiden Geschäftsführer in vierter Generation der Eigentümerfamilien, überzeugt. „Die Übernahme ist ein Erfolg, von dem viele Seiten profitieren: Die Kunden, STW und natürlich auch die Beschäftigten am Standort Hamm-Uentrop“, so die neuen Eigentümer.

16.05.2023

Change of management at ERWO Holding AG and Hoftex Group AG

Klaus Steger (64), CEO of ERWO Holding AG (“ERWO Holding”) and Hoftex Group AG (“Hoftex Group”), will step down from the Management Board of both companies at the beginning of 2024 in accordance with internal policies of the family and the company regarding the retirement age. Already on June 30, 2023, ERWO Holding Management Board member Hans-Georg von Schuh will retire as planned. ERWO Holding Management Board member Manfred Heinrich will also leave the Board as planned at this time and will continue to hold his mandate as one of the managing directors in the Südwolle Group together with Stéphane Thouvay and Johannes Rauch.

Steger’s designated successor as CEO of both companies is Manuela Spörl (50), currently CFO of ERWO Holding and also CFO of Hoftex Group. Hoftex Group is a group of medium-sized companies in the textile industry, in which ERWO Holding holds a significant stake. In addition, ERWO Holding acts as the parent company of the Südwolle Group, in which the Group’s worsted yarn activities are bundled.

Klaus Steger (64), CEO of ERWO Holding AG (“ERWO Holding”) and Hoftex Group AG (“Hoftex Group”), will step down from the Management Board of both companies at the beginning of 2024 in accordance with internal policies of the family and the company regarding the retirement age. Already on June 30, 2023, ERWO Holding Management Board member Hans-Georg von Schuh will retire as planned. ERWO Holding Management Board member Manfred Heinrich will also leave the Board as planned at this time and will continue to hold his mandate as one of the managing directors in the Südwolle Group together with Stéphane Thouvay and Johannes Rauch.

Steger’s designated successor as CEO of both companies is Manuela Spörl (50), currently CFO of ERWO Holding and also CFO of Hoftex Group. Hoftex Group is a group of medium-sized companies in the textile industry, in which ERWO Holding holds a significant stake. In addition, ERWO Holding acts as the parent company of the Südwolle Group, in which the Group’s worsted yarn activities are bundled.

Spörl has a degree in business administration and has been working for Hoftex Group since 2000. Her professional career began in the Corporate Controlling department, and in 2012 she was appointed as an advisor to the Board of Management. She was granted power of attorney in 2015, followed by appointments as CFO of the Hoftex Group in 2020 and CFO of the ERWO Group in 2022. A search for a successor for Spörl in the position of CFO of the Hoftex Group and, subsequently, of ERWO Holding is currently underway. Until the new CFO takes office, the two members of the Management Board, together with the Supervisory Board, will ensure an orderly transition.

The announced change in the Management Board of ERWO Holding, which acts as the parent company of the Südwolle Group, also ensures continuity at the leading manufacturer of worsted yarns for weaving, circular and flat knitting products in pure wool and wool blends. In the future, the management of Südwolle Group will continue to consist of the longstanding members Manfred Heinrich (Technology, Production & Planning), Johannes Rauch (Finance & Controlling) and Stéphane Thouvay (Sales & Marketing and Product Management & Innovation). Together with the designated board member of the parent company ERWO Holding, they will continue the successful development of the Südwolle Group from a mere supplier to a strategic partner of its customers as well as the growth trend of recent years.

The founding family Steger remains involved in the various supervisory bodies of the group of companies and will continue to work closely with them as the sole shareholder of ERWO Holding.

Source:

ERWO Holding AG

16.05.2023

Virgin PET verdrängt PET-Recyclate

Neuware ist, seitdem sich die Logistikketten nach Corona in der 2. Jahreshälfte 2022 wieder neu sortiert haben, sehr billig in Europa und verdrängt PET-Recyclate, so der bvse-Fachverband Kunststoffrecycling.

Neuware ist, seitdem sich die Logistikketten nach Corona in der 2. Jahreshälfte 2022 wieder neu sortiert haben, sehr billig in Europa und verdrängt PET-Recyclate, so der bvse-Fachverband Kunststoffrecycling.

"Die hohe Inflation führt außerdem zu Konsumverzicht bei den Verbrauchern und dadurch leidet die Nachfrage bei den Verpackungsherstellern. Im Ergebnis geraten die Recyclingunternehmen derzeit massiv unter Druck“, beschreibt Dr. Dirk Textor, Vorsitzender des bvse-Fachverband Kunststoffrecycling, die aktuelle Situation.
 
Jüngstes Beispiel für die angespannte Lage ist die Schließung des PET-Recycling-Standorts von Veolia in Rostock. Der Absatz von Flakes und Regranulaten stockt – der dauerhafte, wirtschaftliche Betrieb seiner PET-Recyclinganlage ist für Veolia nicht mehr möglich. Eine Absicherung des Absatzes von recyceltem PET ist in Zusammenarbeit mit der Getränkeindustrie und/oder dem Handel nicht gelungen, hieß es zur Begründung.
 
„Wir sehen das gesamte PET-Recycling in einer Schieflage, weil Abfüller und Inverkehrbringer von PET-Verpackungen ihrer Produktverantwortung nicht nachkommen. Eine mittelfristige Besserung der Situation ist nicht in Sicht. Die PET-Verarbeiter setzen auf Neuware und listen die Recyclate aus“, kritisiert Textor.
 
Dieses Verhalten der PET-Verarbeiter ist nach Auffassung des bvse-Fachverband Kunststoffrecycling „sehr überraschend“, weil Recycling-PET der einzige Kunststoff ist, der bei Verpackungen mit direktem Lebensmittelkontakt eingesetzt werden kann. Das jetzt zu beobachtende Marktverhalten der PET-Verarbeiter, die ausschließlich auf Neuware setzen, sei kurzsichtig und hoch problematisch, heißt es beim bvse. Man dürfe nicht annehmen, dass eine stillgelegte Anlage innerhalb kurzer Zeit wieder hochgefahren werden kann. Anlagen müssen kontinuierlich betrieben werden, um die benötigten Mengen in geeigneten Qualitäten darstellen zu können. Im schlimmsten Fall verschwindet die Anlage sogar ganz vom Markt.
 
„Und damit wird es eng werden, sehr eng, wenn in Kürze die hohen Anforderungen der europäischen Kunststoffstrategie umzusetzen sind. Nicht zuletzt werden bei der Novellierung der europäischen Verpackungsverordnung sehr ambitionierte Recyclateinsatzquoten definiert. Auch deshalb wird es in Europa zu einem Verteilungskampf um Recycling-PET kommen“, so bvse-Fachverbandsvorsitzender Dirk Textor.

Source:

bvse-Fachverband Kunststoffrecycling

Die beiden Preisträgerinnen Nadine Bullerdiek (l.) und Antonia Dannenberg Foto Hochschule Niederrhein
12.05.2023

Wilhelm-Lorch-Preis für Antonia Dannenberg und Nadine Bullerdiek

Die Studentinnen Antonia Dannenberg und Nadine Bullerdiek vom Fachbereich Textil- und Bekleidungstechnik der Hochschule Niederrhein sind von der Wilhelm-Lorch-Stiftung ausgezeichnet worden. Dannenberg erhielt den Preis in der Kategorie Technik für ihre Arbeit „Graphen in alpiner Wintersportbekleidung“, Bullerdiek hatte die Jury mit ihrer englischsprachigen Arbeit „Dyeing of Poly(lactic acid) Fibres for Circular Textile Products“ überzeugen können. Der Preis ist mit 5000 Euro dotiert.

In der Arbeit von Antonia Dannenberg (Betreuende Professor:innen Dr. Robert Groten & Karin Stark) werden unterschiedliche mit Graphen ausgerüstete Polyesterproben hinsichtlich ihrer Wärmeleitfähigkeit untersucht. Graphen ist eine zweidimensionale Kohlenstoffatomschicht mit einzigartigen Eigenschaften. Viele Outdoor-Bekleidungshersteller bringen immer mehr mit Graphen ausgerüstete Produkte auf den Markt. Insbesondere in der alpinen Wintersportbekleidung gewinnt der Werkstoff zunehmend an Bedeutung.

Die Studentinnen Antonia Dannenberg und Nadine Bullerdiek vom Fachbereich Textil- und Bekleidungstechnik der Hochschule Niederrhein sind von der Wilhelm-Lorch-Stiftung ausgezeichnet worden. Dannenberg erhielt den Preis in der Kategorie Technik für ihre Arbeit „Graphen in alpiner Wintersportbekleidung“, Bullerdiek hatte die Jury mit ihrer englischsprachigen Arbeit „Dyeing of Poly(lactic acid) Fibres for Circular Textile Products“ überzeugen können. Der Preis ist mit 5000 Euro dotiert.

In der Arbeit von Antonia Dannenberg (Betreuende Professor:innen Dr. Robert Groten & Karin Stark) werden unterschiedliche mit Graphen ausgerüstete Polyesterproben hinsichtlich ihrer Wärmeleitfähigkeit untersucht. Graphen ist eine zweidimensionale Kohlenstoffatomschicht mit einzigartigen Eigenschaften. Viele Outdoor-Bekleidungshersteller bringen immer mehr mit Graphen ausgerüstete Produkte auf den Markt. Insbesondere in der alpinen Wintersportbekleidung gewinnt der Werkstoff zunehmend an Bedeutung.

Eingearbeitet in textile Flächen bzw. Bekleidung, soll Graphen diesen die Eigenschaft verleihen, Wärme von erhitzen Stellen der Bekleidung an kühlere Stellen zu leiten. Durch diesen Wärmeausgleich würden Sportler:innen potenziell weniger Energie verbrauchen und wären somit leistungsfähiger. Dannenbergs Arbeit hat sich mit der Frage auseinandergesetzt, ob Graphen tatsächlich zur Optimierung der Wärmeleitfähigkeit der Textilien beitragen.

Die durchgeführte Untersuchung hat gezeigt, dass die Wärme sich im aktuellen Forschungsstadium noch nicht wie gewünscht über das Textil verteilt. Keine Probe wies erkennbare Veränderungen auf. Zum jetzigen Zeitpunkt befindet sich die Übertragung der Eigenschaften von Graphen auf textile Flächen in einem frühen Forschungsstadium. Eine Kommerzialisierung von textilen Graphen-Produkten ist demnach aus Forschungssicht bisher noch nicht ausreichend umsetzbar. Aufgrund des weltweiten Interesses ist aber damit zu rechnen, dass in naher Zukunft das Material alltagstauglich und funktionsoptimierend in Bekleidung integriert werden kann. Antonia Dannenberg rundete ihre technische Arbeit mit einer zusätzlichen Designarbeit zum Thema Sportswear ab.

Nadine Bullerdiek hat sich in ihrer Bachelorarbeit („Dyeing of Poly(lactic acid) Fibres for Circular Textile Products”) mit dem Färben von PLA-Fasern für kreislauffähige textile Produkte auseinandergesetzt (Betreuende Professorin: Dr. Maike Rabe).

PLA-Fasern (engl. poly(lactic acid)) gelten als vielversprechende Alternative zu konventionellen Polyesterfasern. Sie sind biobasiert, recyclingfähig und unter industriellen Bedingungen biologisch abbaubar. Somit eignen sie sich für die Herstellung kreislauffähiger Textilien.

Das Problem: PLA-Fasern sind hydrolyseanfällig, besonders unter alkalischen Bedingungen und hohen Temperaturen. Dies bedeutet, dass es beim Färben im Wasserbad zu einem Festigkeitsverlust der Fasern kommen kann. Die Preisträgerin hat in ihrer Arbeit die Auswirkungen der Färbeparameter Zeit, Temperatur und pH-Wert auf die Festigkeit und Farbintensität eines PLA-Zwirns untersucht. So konnten die idealen Färbebedingungen mit möglichst hoher Farbintensität und möglichst geringem Festigkeitsverlust für das Färben des PLA-Zwirns mit Dispersionsfarbstoffen ermittelt werden. Die Arbeit wurde in Kooperation mit dem niederländischen Start-up Arapaha durchgeführt.

Source:

Hochschule Niederrhein

(c) Sadia Rafique
10.05.2023

Renewcell partners with TextileGenesis™ for Circulose® Pulp-to-Retail Transparency

After participating in industry trials, Renewcell and TextileGenesis™ have the intention to establish an agreement for full pulp-to-retail traceability for Renewcell’s CIRCULOSE® recycled raw material across the entire textile supply chain, announcing it at Challenge the Fabric (Milan, Italy).

Renewcell uses a patented process to breakdown and recycle cotton and other cellulosic textile waste, such as worn-out jeans and production scraps, to create CIRCULOSE®, a biodegradable raw material that can be used to create viscose, lyocell, modal, acetate and other man-made cellulosic fibers. These regenerated fibers are then spun into yarns, woven or knitted into fabrics before being cut and sewn into new high-quality textile products.
 
With TextileGenesis™, Renewcell will be able to share real-time digital traceability with its customers and supply chain partners.

After participating in industry trials, Renewcell and TextileGenesis™ have the intention to establish an agreement for full pulp-to-retail traceability for Renewcell’s CIRCULOSE® recycled raw material across the entire textile supply chain, announcing it at Challenge the Fabric (Milan, Italy).

Renewcell uses a patented process to breakdown and recycle cotton and other cellulosic textile waste, such as worn-out jeans and production scraps, to create CIRCULOSE®, a biodegradable raw material that can be used to create viscose, lyocell, modal, acetate and other man-made cellulosic fibers. These regenerated fibers are then spun into yarns, woven or knitted into fabrics before being cut and sewn into new high-quality textile products.
 
With TextileGenesis™, Renewcell will be able to share real-time digital traceability with its customers and supply chain partners.

  • The platform uses digital tokens to ensure a secure chain of custody for all supply chain processes from raw materials to retail.
  • The company’s “fiber-forwards” traceability captures real-time shipments; its Fibercoins™ digital tokens verify point of origin and eliminate “double counting” of sustainable materials.
  • Its AI (augmented intelligence) engine verifies transactions between supply chain partners.  

 
Furthermore, TextileGenesis™ is already partnering with fiber producers including Lenzing AG, Eastman, and Birla Cellulose.

Source:

Re:NewCell AB

Recycled yarn (c) ITA Aachen
05.05.2023

ITA at the ITMA: Smart Circular Economy

"ITA Aachen and ITA Augsburg are part of the ITA Group International Centre for Sustainable Textiles. Experience our textile innovations at two exhibition booths," explains ITA Institute Director Professor Dr. Thomas Gries. "See our ring spinning tester at booth H3-B304, which spins recycled fibres sustainably and individually in a previously impossible fineness. In addition, there is digital yarn monitoring, which enables new market potentials. Get an idea of the Recycling Atelier of ITA Augsburg at booth H3-A207 and see the textile cycle from used textile to solution steps for industrial implementation together with industry partners. Join us on the Walk4Recycling and follow the path from used textile to a new knitted pullover on a tour of the trade fair. This is how we live up to our claim as the ITA Group: sustainable - digital - individual."

"ITA Aachen and ITA Augsburg are part of the ITA Group International Centre for Sustainable Textiles. Experience our textile innovations at two exhibition booths," explains ITA Institute Director Professor Dr. Thomas Gries. "See our ring spinning tester at booth H3-B304, which spins recycled fibres sustainably and individually in a previously impossible fineness. In addition, there is digital yarn monitoring, which enables new market potentials. Get an idea of the Recycling Atelier of ITA Augsburg at booth H3-A207 and see the textile cycle from used textile to solution steps for industrial implementation together with industry partners. Join us on the Walk4Recycling and follow the path from used textile to a new knitted pullover on a tour of the trade fair. This is how we live up to our claim as the ITA Group: sustainable - digital - individual."

ITA Aachen - Digital ring spinning tester for recycled fibres enables spinning of fine yarns with high recycled fibres content
The Institut für Textiltechnik of RWTH Aachen University (ITA) will be exhibiting a digital ring spinning tester, which spins recycled fibres directly and conventionally with a particularly high content of 60-70 percent. Up to now, recycled yarns have mainly been rotor-spun in this blend ratio. This results in rather coarse yarns and is not suitable for finer textiles such as outerwear. Ring spinning of recycled yarns now enables the spinning of finer yarns and thus a higher application level for recycled materials.

A unique selling point of the ITA ring spinning tester is the simultaneous spinning in the direct spinning process from the sliver and in the classic ring spinning process. For this purpose, the strength and elongation of the spun yarn are determined online and digitally for the first time. The real-time measurement allows process parameters and yarn properties to be adjusted iteratively and quickly. The ring spinning tester was upgraded from an existing tester to Industry 4.0 standard and is operated via a tablet. Operation via tablet enables the adjustment of process parameters including online quality monitoring remotely from anywhere in the world.
 
For this purpose, the ring spinning tester is also able to produce fine ring spun yarns. These yarns made from recycled material opens up a multitude of further fields of application for woven and knitted goods. Now, for example, clothing and technical textiles can be made from recycled material, the production of which was not possible before - such as outerwear made from recycled material. The development of new industries and fields of application opens up new market potential for recycled yarns - also and especially for processing in Europe. This creates the opportunity to preserve key technologies and jobs in cost-intensive locations.

ITA Augsburg - Recycling Atelier: Walk4Recycling
The Recycling Atelier of the Institut für Textiltechnik Augsburg gGmbH on stand H3-A207 presents the textile recycling from used textiles into new products via the various process steps and, together with the industrial partners, opens up solution paths for industrial implementation.

Under the headline "Walk4Recycling", a tour of the fair shows the cycle of used textiles from used knitwear into a new knitted pullover via a ring yarn made from a blend of 65 percent recycled cotton and 35 percent virgin polyester. The key innovation here is the high proportion of recycled fibres from post-consumer textiles for a ring yarn of this fineness. Today, mainly coarse rotor yarns for low-quality textiles are spun from these materials. The industrial partners participating in the Walk4Recycling are partners of the Recycling Atelier and contribute with their technologies to the fact that fibre material from old clothes can be processed in various process stages into a yarn of new value and high-quality ready-made garments.

The Walk4Recycling offers visitors the opportunity to experience a complete recycling cycle with the numerous process stages from tearing the old textiles, preparing and spinning the fibres and knitting a new jumper live during the fair. Get detailed information on the mechanical recycling of clothing via QR code, website and flyer about the participating exhibitors and their machines and technologies. A short movie will give you additional insights into the various processes involved in the production of the jumper.

Philipp Köhler folgt auf Dr. Frank Meister TITK - Thüringisches Institut für Textil- und Kunststoff-Forschung e.V.
03.05.2023

TITK: Philipp Köhler folgt auf Dr. Frank Meister

Die größte Abteilung des Thüringischen Instituts für Textil- und Kunststoff-Forschung Rudolstadt (TITK) hat einen neuen Chef. Zum 30. April 2023 folgte auf Dr. Frank Meister sein bisheriger Stellvertreter Philipp Köhler, der den Bereich Native Polymere und Chemische Forschung und damit ein fast 60-köpfiges Team aus Wissenschaftlern, Technikern und Laboranten übernimmt.

„Dr. Frank Meister hat in seiner langen und bemerkenswerten Laufbahn maßgeblich dazu beigetragen, dass die TITK-Gruppe heute so solide aufgestellt ist und gerade durch die Celluloseforschung weltweit eine hohe Anerkennung als kompetenter und vertrauenswürdiger Forschungspartner genießt. Mit Philipp Köhler setzt nun eine überzeugende und noch dazu sehr sympathische Führungspersönlichkeit die erfolgreiche Arbeit dieser wichtigen Abteilung fort,“ so der geschäftsführende Direktor des TITK, Benjamin Redlingshöfer.

Die größte Abteilung des Thüringischen Instituts für Textil- und Kunststoff-Forschung Rudolstadt (TITK) hat einen neuen Chef. Zum 30. April 2023 folgte auf Dr. Frank Meister sein bisheriger Stellvertreter Philipp Köhler, der den Bereich Native Polymere und Chemische Forschung und damit ein fast 60-köpfiges Team aus Wissenschaftlern, Technikern und Laboranten übernimmt.

„Dr. Frank Meister hat in seiner langen und bemerkenswerten Laufbahn maßgeblich dazu beigetragen, dass die TITK-Gruppe heute so solide aufgestellt ist und gerade durch die Celluloseforschung weltweit eine hohe Anerkennung als kompetenter und vertrauenswürdiger Forschungspartner genießt. Mit Philipp Köhler setzt nun eine überzeugende und noch dazu sehr sympathische Führungspersönlichkeit die erfolgreiche Arbeit dieser wichtigen Abteilung fort,“ so der geschäftsführende Direktor des TITK, Benjamin Redlingshöfer.

Als promovierter Polymerchemiker war Dr. Frank Meister zum 1. Juni 1993 von der zentralen Forschung der Leuna-Werke nach Rudolstadt gewechselt. Sein erstes Arbeitsfeld wurde die chemische Modifizierung von Cellulose, um sie direkt, ohne jedes Lösungsmittel verformbar zu machen. Damals hatte das Institut bereits begonnen, die Grundlagen für ein Direktlöseverfahren – das Alleinstellungsmerkmal des TITK – zu legen. In der Folgezeit setzte sich dieser Prozess zur Direktauflösung und Trocken-Nass-Verformung von Cellulose durch. Die daraus erhaltenen Spezialfasern konnten in den kommerziellen Maßstab überführt werden.

Nach drei Jahren wurde Frank Meister stellvertretender Abteilungsleiter, 2001 Chef der Chemischen Forschung am TITK. Meilensteine seiner Laufbahn sind mehr als 50 wissenschaftliche Publikationen, über 30 Patente und mindestens 100 Fachvorträge im In- und Ausland.
Für die Entwicklung des Instituts war die Mitwirkung am Wachstumskern „ALCERU-Hightech“ rund um das patentierte Verfahren zur Herstellung von Cellulose-Funktionsfasern von großer Bedeutung. Die neue Methode zur Direkteinarbeitung unverträglicher flüssiger oder schmelzbarer Substanzen in eine Cellulosefaser brachte dem TITK 2008 auch den Thüringer Forschungspreis.

Das „letzte Highlight“ war für Meister Lyohemp® – die erste Lyocellfaser aus 100 Prozent nicht holzbasiertem Zellstoff. Diese Neuentwicklung auf Grundlage von bisher ungenutzten Hanf-Reststoffen steht beispielhaft für einen Forschungsschwerpunkt am TITK - die Verwendung von alternativen Rohstoffen und Recycling-Materialien.

Bereits seit knapp drei Jahren hat Meister Philipp Köhler auf seine Aufgabe vorbereitet. „Er ist ein exzellenter Wissenschaftler mit sehr genauen Vorstellungen von seiner eigenen Entwicklung. Und er ist mit einer hohen sozialen Kompetenz ausgestattet“, begründet Meister seine Wahl. Philipp Köhler ist mit 33 Jahren einer der jüngsten Abteilungsleiter, die das TITK je hatte.

Dass es darauf ankommt, nicht nur im Hier und Jetzt zu leben, sondern den Blick schon voraus zu richten, ist ein Prinzip, das er unbedingt beibehalten will. „Denn auch nachwachsende Rohstoffe wie Holz sind nur begrenzt verfügbar. Deshalb müssen wir uns schon heute Gedanken machen, was danach als Faserrohstoff dienen könnte.“ Zum Beispiel Proteine oder Bakterien-Zellulose, sagt Köhler. „Da, wo andere suchen, müssen wir schon Lösungen durchdacht und industrietaugliche, anwendbare Prozesse parat haben, die noch dazu nachhaltig und ressourceneffizient sind.“

Der gebürtige Saalfelder kam unmittelbar nach dem Studium der Werkstofftechnik 2014 als „Master of Engineering“ ans TITK. Als wissenschaftlicher Mitarbeiter übernahm er bestehende Projekte und half unter anderem mit, die vorhandenen Produkte mit Funktionsfasern weiter zu verbessern. Aktuell promoviert er bei Professor Chokri Cherif an der TU Dresden zu alternativen Materialien für die Faserherstellung.

More information:
TITK TITK Rudolstadt
Source:

TITK - Thüringisches Institut für Textil- und Kunststoff-Forschung e.V.

03.05.2023

Lenzing: Outlook for 2023

  • Revenue grows to EUR 623.1 mn – fiber sales recovered over the course of the quarter
  • EBITDA and net result for the period down compared with the first quarter of 2022
  • Cost reduction program of more than EUR 70 mn being implemented according to plan
  • Production of TENCEL™ brand modal fibers successfully launched in China
  • Lenzing confirms guidance for 2023

The business performance of the Lenzing Group during the first quarter of 2023 largely reflected market trends. However, after the market environment had deteriorated significantly in the third and fourth quarters of the previous year, signs of recovery emerged during the first quarter in terms of demand as well as raw material and energy costs. Textile fibers recorded moderate but steadily improving demand. Business with fibers for nonwovens and with dissolving wood pulp performed better than expected. Raw material and energy costs were still at an elevated albeit decreasing level.

  • Revenue grows to EUR 623.1 mn – fiber sales recovered over the course of the quarter
  • EBITDA and net result for the period down compared with the first quarter of 2022
  • Cost reduction program of more than EUR 70 mn being implemented according to plan
  • Production of TENCEL™ brand modal fibers successfully launched in China
  • Lenzing confirms guidance for 2023

The business performance of the Lenzing Group during the first quarter of 2023 largely reflected market trends. However, after the market environment had deteriorated significantly in the third and fourth quarters of the previous year, signs of recovery emerged during the first quarter in terms of demand as well as raw material and energy costs. Textile fibers recorded moderate but steadily improving demand. Business with fibers for nonwovens and with dissolving wood pulp performed better than expected. Raw material and energy costs were still at an elevated albeit decreasing level.

Outlook
The war in Ukraine and the more restrictive monetary policy pursued by many central banks in order to combat inflation are expected to continue to influence global economic activity. The IMF warns that risks remain elevated overall and forecasts growth of 2.8 and 3 percent for 2023 and 2024 respectively. The currency environment is expected to remain volatile in the regions relevant to Lenzing.

This market environment continues to weigh on the consumer climate and on sentiment in the industries relevant to Lenzing. However, the outlook has brightened somewhat recently.

Demand picked up tangibly after the Chinese New Year. As a consequence, capacity utilization improved and stocks were further reduced both at viscose producers and at downstream stages of the value chain.

In the trend-setting market for cotton, signs are emerging of a further buildup of stocks in the current 2022/23 crop season. Initial forecasts for 2023/24 anticipate a more balanced relationship between supply and demand.

However, despite signs of recovery in both demand and raw material and energy costs, earnings visibility remains limited overall.

Lenzing is fully on track with the implementation of the reorganization and cost reduction program. These and other measures are aimed at positioning Lenzing in the best possible way for the expected market recovery.

Structurally, Lenzing continues to anticipate growth in demand for environmentally responsible fibers for the textile and clothing industry as well as for the hygiene and medical sectors. As a consequence, Lenzing is very well positioned with its “Better Growth” strategy and plans to continue driving growth with specialty fibers as well as its sustainability goals, including the transformation from a linear to a circular economy model.

The successful implementation of the key projects in Thailand and Brazil as well as the investment projects in China and Indonesia will further strengthen Lenzing’s positioning in this respect.

Taking into account the aforementioned factors and assuming a further market recovery in the current financial year, the Lenzing Group continues to expect EBITDA in a range between EUR 320 mn and EUR 420 mn for 2023.

Source:

Lenzing AG